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通过冷冻置换电子显微镜观察裂殖酵母β-微管蛋白突变体nda3-311细胞的转变。功能性微管蛋白对纺锤体极体复制的需求。

The transition of cells of the fission yeast beta-tubulin mutant nda3-311 as seen by freeze-substitution electron microscopy. Requirement of functional tubulin for spindle pole body duplication.

作者信息

Kanbe T, Hiraoka Y, Tanaka K, Yanagida M

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Japan.

出版信息

J Cell Sci. 1990 Jun;96 ( Pt 2):275-82. doi: 10.1242/jcs.96.2.275.

Abstract

A previous fluorescence light-microscopic study showed that the fission yeast cold-sensitive beta-tubulin mutant nda3-311 was arrested with rod-like condensed chromosomes in a mitotic state at the restrictive temperature. Upon transfer to the permissive temperature, a spindle was formed and the nucleus was divided. In the present study, we employed freeze-substitution electron microscopy to examine the ultrastructure of arrested and released nda3-311 cells. In arrested cells, a single, displaced nucleus was seen with a single spindle pole body. Therefore, spindle pole body duplication seemed to require functional beta-tubulin. The nuclear membrane was highly deformed with a leaf-like profile in cross-section, possibly due to an interaction with the rod-like, condensed chromosomes. Upon transfer to the permissive temperature, the spindle pole duplicated and the daughter spindle pole bodies rapidly migrated to the opposite ends of the nucleus, accompanied by the formation of the mitotic spindle. Elongation of the nuclear envelope occurred with concomitant spindle extension, as in a wild-type mitosis. The deformed nuclear membrane became smooth and described a convex curve. The numerous vacuoles that are seen in the arrested cells decreased in number and increased in size. Septation was completed, leaving the two divided nuclei in one half of the cell. Hexagonally arranged microtubules, apparently forming the mitotic spindle, were observed in a cross-section of a cell after return to the permissive conditions.

摘要

先前的荧光显微镜研究表明,裂殖酵母冷敏感型β-微管蛋白突变体nda3-311在限制温度下以有丝分裂状态被棒状浓缩染色体阻滞。转移到允许温度后,纺锤体形成,细胞核分裂。在本研究中,我们采用冷冻置换电子显微镜来检查被阻滞和释放后的nda3-311细胞的超微结构。在被阻滞的细胞中,可见一个单一的、移位的细胞核和一个单一的纺锤极体。因此,纺锤极体复制似乎需要功能性β-微管蛋白。核膜在横切面上高度变形,呈叶状轮廓,这可能是由于与棒状浓缩染色体相互作用所致。转移到允许温度后,纺锤极复制,子代纺锤极体迅速迁移到细胞核的相对两端,同时有丝分裂纺锤体形成。核膜伸长,同时纺锤体延伸,如同在野生型有丝分裂中一样。变形的核膜变得光滑,并呈凸曲线状。在被阻滞的细胞中可见的大量液泡数量减少,体积增大。细胞完成隔膜形成,使两个分开的细胞核留在细胞的一半中。在回到允许条件后的细胞横切面上观察到呈六边形排列的微管,显然形成了有丝分裂纺锤体。

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